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Online since: February 2024
Authors: Marvin S. Tolentino, Blessie A. Basilia, Persia Ada N. de Yro
Composites Part B: Engineering 2017; 110:442–58. https://doi.org/10.1016/j.compositesb.2016.11.034
International Journal of Advanced Manufacturing Technology 2019; 102: 2877–89. https://doi.org/10.1007/s00170-019-03332-x
Composites Part B: Engineering 2017; 124:88–100. https://doi.org/10.1016/j.compositesb.2017.05.013
Composites Part B: Engineering 2016; 106:20–7. https://doi.org/ 10.1016/j.compositesb.2016.08.039
International Journal of Mechanical Sciences 2017; 120:225–36. https://doi.org/10.1016/j.ijmecsci.2016.11.032
Online since: March 2025
Authors: Anne Zulfia Syahrial, Fiona Angellinnov, Achmad Subhan, Tribidasari Anggraningrum Ivandini, Afriyanti Sumboja, Bambang Priyono, Qing Yu Yan
Li: Ceramics International Vol. 46 (2020) p. 4643–4651 [4] H.
Dhaneswara: International Journal of Technology Vol. 13 (2022) p. 880–889 [16] T.
Xiao: ACS Sustainable Chemistry and Engineering Vol. 5 (2017) p. 7733–7742 [17] D.
Nainggolan: South African Journal of Chemical Engineering Vol. 40 (2022) p. 80–86 [19] O.
Meethong: Key Engineering Materials Vol. 766 (2018) p. 51–57 [20] Y.
Online since: January 2022
Authors: Nilanjan Mallik
Effective Coefficients of Piezoelectric Fiber Reinforced Composites Using Modified Strength of Materials and Energy Approaches Nilanjan Mallik* Department of Mechanical Engineering, Indian Institute of Technology (BHU), Varanasi 221005, Uttar Pradesh, India nmallik.mec@iitbhu.ac.in Keywords: Piezoelectric composites, effective properties, micromechanics, piezoelectricity, smart materials, strength of materials, energy method.
[16] Dunn, M.L., Taya, M., “Electromechanical properties of porous piezoelectric ceramics“, J.
L., andTaya, M., “Micromechanics Predictions of the Effective Electroelastic Moduli of Piezoelectric Composites,” International Journal of Solids and Structures, Vol. 30, (1993), pp. 161–175
H., “Equivalent Inclusion Method for the Work-Hardening Behavior of Piezoelectric Composites,” International Journal of Solids and Structures, Vol. 33, No. 10, (1996), pp. 1439–1451
F., Principles of composite material mechanics, Mc-Graw Hill International, (1994).
Online since: August 2009
Authors: Wei Xia, Wei Ping Chen, Yuan Biao Wu, Zhen Xing Zheng
Chen 1 School of Mechanical and Automotive Engineering, South China University of Technology, GuangZhou, China 510641, zhengzhenxing@sina.com Keywords: metal injection molding, numerical simulation, process optimization, orthogonal experiment, pairwise interaction Abstract: In this paper, based on the CAE technology for MIM and fractional factorial design method, the simulation for the filling process was executed in different process conditions by the Moldflow software.
ZHENG: Journal of Central South University of Technology [in Chinese].
Vol. 35(12) (2004),p.180-185 [2] S.B.GUO, X.H.QU, B.H.DUAN, X.B.He and M.L.Qin: Journal of Materials Engineering [in Chinese].Vol.31 (11) (2004),p.32-36 [3] B.J.Zhu, Powder Injection Molding of Tungsten Cemented Carbide(Dissertation for Ph.D. of Central South university,2002) [in Chinese]
[4] Maeda Y, Nomura H: Nippon Kinzoku Gakkaishi/Journal of the Japan Institute of Metals [in Japanese], Vol.60 (11) (1996),p. 1108-1115 [5] Miura Hideshi, Baba Takeharu, Andou Shinji and Honda Tadatoshi: Journal of the Japan Society of Powder and Powder Metallurgy [in Japanese], Vol.41 (3) (1994),p. 240-243 [6] Hanson Andrew D, Perruzza Steven C: International Journal of Powder Metallurgy, Vol.36 (3) (2000), p.37-42 [7] Ye Hua: Society of Plastics Engineers, Vol.12 (3) (1999),p.594-597 [8]Hieber, C.A and S.F.Shen: Journal of Non-Newtonian Fluid Mechanics, Vol.7(1)(1980), p. 1
ZHOU: Journal of Harbin Institute of Technology [in Chinese], Vol.12 (2)(2005), p.129~133
Online since: August 2016
Authors: Astrid Ayla E. Liberato, Jarevic P. Cayabyab, Ma. Shanlene D.C. Dela Vega
Chattopadhyaya, "Adsorptive removal of Pb2+, Co2+ and Ni2+ by hydroxyapatite/chitosan composite from aqueous solution," Journal of the Taiwan Institute of Chemical Engineers, vol. 43, pp. 125-131, 1// 2012
Sharrock, "Hydroxyapatite gel for the improved removal of Pb2+ ions from aqueous solution," Chemical Engineering Journal, vol. 232, pp. 128-138, 10// 2013
Sasaki, "Effects of trace elements in fish bones on crystal characteristics of hydroxyapatite obtained by calcination," Ceramics International, vol. 40, pp. 10777-10785, 8// 2014
León, "Biological hydroxyapatite obtained from fish bones," Materials Science and Engineering: C, vol. 32, pp. 478-486, 4/1/ 2012
Kwon, "The removal of heavy metals using hydroxyapatite," ENVIRONMENTAL ENGINEERING RESEARCH-SEOUL-, vol. 10, p. 205, 2005
Online since: November 2012
Authors: Qiang Li, Hui Yu, Li Gang Liu, Yu Hui Wang, Yu Dong Yang, Cong Tao Liang
International Journal of Fatigue, 2004, 26: 311-319 [2] Anders Persson, Sture Hogmark, Jens Bergström.
International Journal of Fatigue, 2004, 26:1095-1107 [3] H.
International Journal of Mechanical Sciences, 2001, 43: 1243-1257 [4] Sergey V. shepel, Samuel Paolucci.
Applied Thermal Engineering, 2002, 22: 229-248 [5] A.
Materials Science and Engineering A, 2007, 466: 71-78
Online since: February 2012
Authors: Tao Jiang, Yin Biao Guo, Yong Bo Wu, Zhen Zhong Wang, Yun Feng Peng
Dow: Precision Engineering Vol. 32 (2008), p. 153-172
Soutome: International Journal of Machine Tools and Manufature, Vol. 43 (2003), p. 1375-1382
Liang: International Journal of Advanced Manufacturing Technology, Vol. 33 (2007), p. 875-884
Yasuto: Transactions of the ASME: Journal of Manufacturing Science and Engineering, Vol. 127 (2005), p. 522-532
Son: International Journal of the Korean Society of Precision Engineering, Vol. 2(3) (2001), p. 41-46.
Online since: February 2018
Authors: Jian Jiang Wang, Hai Tao Gao, Jia Wei Liu
Infrared Emissivities and Microwave Absorption Properties of Perovskite La1-xCaxMnO3 (0≤x≤0.5) Jia Wei Liu, Jian Jiang Wang, Hai Tao Gao Advanced Material Institute, Ordnance Engineering College, Shijiazhuang 050003, China Keywords: Iron incorporation, Electrical conductivity, Infrared emissivity, Microwave absorbing Abstract.
Sun: Ship Electronic Engineering, Vol. 24 (2012) No.4, p.18
Toru: Key Engineering Materials, Vol. 269 (2004) No.3, p.129
Ohnishi: International Journal of Thermophysics, Vol. 5 (2001) No.22, p.4864
Zhu: Journal of the Chinese Ceramic Society, Vol. 44 (2016) No.9, p.1316.
Online since: March 2013
Authors: Mohamad Rusop, Mohamad Hafiz Mamat, I. Saurdi
Rusop1, 2, c 1NANO-ElecTronic Centre (NET), Faculty of Electrical Engineering, UniversitiTeknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia 2NANO- SciTech Centre (NST), (Centre for Nano-Science and Nano-Technology), Institute of science, UniversitiTeknologi MARA (UiTM), 40450 Shah Alam, Selangor, Malaysia asaurdy788@gmail.com, bhafiz_030@yahoo.com, cnanouitm@gmail.com Keywords: Zinc oxide; Surface Morphology; Electrical properties; Substrate temperature; Ssputtering Abstract.
Wang, Field-effect tansistor based on single semiconducting oxide nanobelts, Journal of Physics and Chemical 107 (2003) 659-663
Kiriakidis, ZnO transparent thin films for gas sensor applications, Journal of Thin Solid Films 515 (2006) 551-554
[4] D. wei, Dye-sensitized solar cell review, Intetrnaional Journal of Molecular Science 11 (2010) 1103-1113
Lu, Effect of ZnO seed layers on the solutio chemical growth of ZnO nanorods arrays, Journal of Ceramics International 35 (2009) 1255-1260
Online since: June 2012
Authors: Dun Bo Yu, Ming Pang, Shuai Lu, Hong Wei Li, Bo Wang
However, thermal shock and fatigue resistance evaluation of chilling roll materials performs important engineering significance.
Takahashi: Composites Engineering, Vol. 5 (1995) No.7, p.879
Wuensch: International Journal of Fatigue, Vol. 33 (2011) No.3, p.396
Yu: International Journal of Heat and Mass Transfer, Vol. 51 (2008) No.3–4, p.757
Xu: Mechanical & Electrical Engineering Technology, Vol. 40 (2011) No.1, p.72.
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